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Carlotta Berry; Leanne Holder; Nicole Pfiester; Tracy Weyand – IEEE Transactions on Education, 2024
Contribution: Visual maps that illustrate how mathematics, physics, and electrical engineering classes are connected to each other during the first two years of the electrical engineering curriculum were developed. Key terminology and differences in presentation between fields are discussed. Background: Experience has shown that engineering…
Descriptors: Concept Mapping, Mathematics, Physics, Engineering Education
Arto Mutanen; Antti Rissanen; Kalle Saastamoinen – International Baltic Symposium on Science and Technology Education, 2025
This study posits mathematics as a fundamental methodological framework for navigating the complexities of multidisciplinary research. It argues that the increasing prevalence of real-world problems demands the integration of knowledge from diverse scientific fields, where mathematics, particularly through the method of analysis and synthesis,…
Descriptors: Mathematics Instruction, Interdisciplinary Approach, Teaching Methods, Educational History
John Jairo Jaramillo; Andrés Chiappe – Prospects, 2024
This article describes a systematic literature review focused on identifying substantial drawbacks in the current curricula and on the challenges to developing AI-driven curricula. One hundred thirty articles were read in depth and qualitatively analyzed. The results suggest that educational stakeholders should integrate AI into the curriculum…
Descriptors: Trend Analysis, Interdisciplinary Approach, Problem Solving, Futures (of Society)
Mary Jo Orzech; Jie Zhang; Virginia Orzel; Shirin Sultana; Angela Thompsell; Jennifer Wood; Ning Yu – Journal of Educational Technology Systems, 2025
Open Educational Resources (OER) have been adopted by growing numbers in higher education during the last two decades. Online repositories contain a myriad of OER content, learning objects, and activities. This article presents six case studies from both new and experienced instructors across multiple disciplines at a single institution. It…
Descriptors: Open Educational Resources, Higher Education, Activities, Resource Units
Floris A. Valentijn; Michael Y. Schakelaar; Maria A. Hegeman; Willemijn D. Schot; Wim J. A. G. Dictus; Sandra Crnko; Toine ten Broeke; Niels Bovenschen – Biochemistry and Molecular Biology Education, 2024
Translational medicine (TM) is an interdisciplinary branch of biomedicine that bridges the gap from bench-to-bedside to improve global health. Fundamental TM skills include interdisciplinary collaboration, communication, critical thinking, and creative problem-solving (4Cs). TM is currently limited in undergraduate biomedical education programs,…
Descriptors: Barriers, Interdisciplinary Approach, Patients, Physicians
Routhe, Henrik Worm; Holgaard, Jette Egelund; Kolmos, Anette – IEEE Transactions on Education, 2023
Contribution: This research paper contributes to engineering education research with a framework for interdisciplinary learning outcomes based on students' experiences from participation in an interdisciplinary project for engineering students. A theoretical frame of reference is developed to analyze students' experience with interdisciplinary…
Descriptors: Outcomes of Education, Student Projects, Interdisciplinary Approach, Case Studies
Noha Alrwaished – Cogent Education, 2024
Due to the increasing popularity of STEM education, preservice preparation colleges have also become more important for training teachers. This study involved (25) preservice teachers completing STEM-based lesson plan training sessions during a mathematics teaching methods course. This study seeks to describe and gather opinions regarding the…
Descriptors: Preservice Teachers, Preservice Teacher Education, Mathematics Teachers, STEM Education
Coons, Jayda – Journal of the National Collegiate Honors Council, 2020
Responding to Patricia J. Smith's essay on the appropriateness of professionalizing honors education, the author argues that discussions of specialization and standardization across honors programs should be suspended until academia has sufficiently dealt with the endemic problem of undercompensated contingent labor. The author further suggests…
Descriptors: Honors Curriculum, Specialization, Standards, Creativity
Christopher Dignam; Candace M. Smith; Amy L. Kelly – Journal of Education in Science, Environment and Health, 2025
The evolution of artificial intelligence (AI) and robotics in education has transitioned from automation toward emotionally responsive learning systems through artificial emotional intelligence (AEI). While AI-driven robotics has enhanced instructional automation, AEI introduces an affective dimension by recognizing and responding to human…
Descriptors: Robotics, Artificial Intelligence, Teaching Methods, Computer Software
Downie, Sue; Gao, Xiaoping; Bedford, Simon; Bell, Kenton; Kuit, Tracey – Journal of University Teaching and Learning Practice, 2021
Teacher and student perceptions of using technology enhanced learning (TEL) in higher education have received growing attention, particularly during COVID-19, however existing studies are mainly disciplinespecific. This study adopts a holistic cross-disciplinary approach. It compares teacher and student perceptions on defining TEL, promotors and…
Descriptors: Technology Integration, Higher Education, College Students, College Faculty
M. Winter; David Overend – Issues in Interdisciplinary Studies, 2023
Leadership is an elusive and widely debated concept across disciplinary boundaries and is often contested in scholarship of learning and teaching. This article troubles models and conceptualisations of leadership in Students as Change Agents (SACHA), an interdisciplinary challenge-based course offered at the University of Edinburgh, Scotland.…
Descriptors: Interdisciplinary Approach, Leadership Training, Foreign Countries, Change Agents
Marja Vauras; Simone Volet; Susan Bobbitt Nolen – Advances in Motivation and Achievement, 2019
This chapter aims to seek insight into engagement in context, conceived through Productive Disciplinary Engagement (PDE), which can be perceived as a condition for sustained disciplinary and interdisciplinary interest and motivation. Despite ongoing trends in the design and implementation of enriched learning environments that are expected to…
Descriptors: Cooperative Learning, Intellectual Disciplines, Interdisciplinary Approach, Educational Environment
Labadze, Olesya E.; Efimov, Aleksandr V.; Sych, Vitaly V.; Petrova, Nina F.; Lipchanskaya, Irina V.; Ivanenko, Natalia S. – World Journal on Educational Technology: Current Issues, 2021
The problems of digitalization of education and transformation of the Russian culture has been overlooked in the research space. The aim of this research therefore is to report the crisis nature of Russian educational culture, considered in terms of digital innovations of the higher education system. The study was qualitative, and it utilized the…
Descriptors: Higher Education, Instructional Innovation, Interdisciplinary Approach, Content Analysis
Beagon, Una; Kövesi, Klara; Tabas, Brad; Nørgaard, Bente; Lehtinen, Riitta; Bowe, Brian; Gillet, Christiane; Spliid, Claus Monrad – European Journal of Engineering Education, 2023
Despite the emerging discussions about the growing role of engineers in achieving the Sustainable Development Goals (SDGs), there is a lack of agreement on which competences should be prioritised to prepare engineering students to resolve future sustainability challenges. This study examined and compared the views of key stakeholders of…
Descriptors: Engineering Education, Barriers, Sustainable Development, Objectives
Fancsali, Cheri; Mirakhur, Zitsi; Klevan, Sarah; Rivera-Cash, Edgar – Research Alliance for New York City Schools, 2022
The perspective that computing and computational thinking (CT) are necessary competencies for the 21st century is increasingly pervasive. Computational concepts and methods--problem solving, designing systems, refining the steps in a process, and tinkering toward creative solutions--are relevant in nearly every discipline, profession, and…
Descriptors: Thinking Skills, Problem Solving, Computation, Science Instruction